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Signature of (axial)vector operators in B_cto D_s^((*)) μ^+ μ^- decays

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arxiv 2409.01269 v2 pith:ESYPYBX5 submitted 2024-09-02 hep-ph

Signature of (axial)vector operators in B_cto D_s^((*)) μ^+ μ^- decays

classification hep-ph
keywords asymmetriesaxialdecaysleptonmodelobservablesphysicsstandard
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The persistent anomalies observed in $B$ mesons related to $b \to s \mu^+ \mu^-$ transitions point to the potential for new physics beyond the Standard Model. To explore this further, we conduct an analysis of the exclusive semileptonic decays $B_c\to D_s^{(*)} \mu^+ \mu^-$ within an effective field theory formalism. We perform a global fit to new (axial)vector couplings using the current experimental data for $b \to s \mu^+ \mu^-$ transitions. We compute the branching ratios and physical observables such as forward-backward asymmetries, lepton polarization asymmetries, form factor independent observables for $B_c\to D_s^{(*)} \mu^+ \mu^-$, both within the Standard Model and in new physics scenarios. Additionally, we examine the existence of lepton flavor universality violation in the $B_c\to D_s^{(*)} \ell^+ \ell^-$ process.

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  1. Correlative study of flavor anomalies and dark matter in the light of scalar leptoquark

    hep-ph 2024-09 unverdicted novelty 3.0

    A U(1)_{Le-Lμ} extended SM with scalar leptoquark explains b→s anomalies via Z', leptoquark and new fermions while the lightest neutral fermion serves as DM, with constraints analyzed from B decays and DM observables.